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气候变暖促进蓝藻的抗生素耐药性协同进化。

Climate warming promotes collateral antibiotic resistance development in cyanobacteria.

机构信息

National Key Laboratory of Water Disaster Prevention, Nanjing Hydraulic Research Institute, Nanjing 210098, China; Center for Eco-Environment Research, Nanjing Hydraulic Research Institute, Nanjing 210098, China; Yangtze Institute for Conservation and Development, Hohai University, Nanjing 210098, China.

National Key Laboratory of Water Disaster Prevention, Nanjing Hydraulic Research Institute, Nanjing 210098, China; Center for Eco-Environment Research, Nanjing Hydraulic Research Institute, Nanjing 210098, China; Yangtze Institute for Conservation and Development, Hohai University, Nanjing 210098, China.

出版信息

Water Res. 2024 Jun 1;256:121642. doi: 10.1016/j.watres.2024.121642. Epub 2024 Apr 18.

Abstract

Both cyanobacterial blooms and antibiotic resistance have aggravated worldwide and posed a great threat to public health in recent years. As a significant source and reservoir of water environmental resistome, cyanobacteria exhibit confusing discrepancy between their reduced susceptibility and their chronic exposure to antibiotic mixtures at sub-inhibitory concentrations. How the increasing temperature affects the adaptive evolution of cyanobacteria-associated antibiotic resistance in response to low-level antibiotic combinations under climate change remains unclear. Here we profiled the antibiotic interaction and collateral susceptibility networks among 33 commonly detected antibiotics in 600 cyanobacterial strains isolated from 50 sites across four eutrophicated lakes in China. Cyanobacteria-associated antibiotic resistance level was found positively correlated to antibiotic heterogeneity across all sites. Among 528 antibiotic combinations, antagonism was observed for 62 % interactions and highly conserved within cyanobacterial species. Collateral resistance was detected in 78.5 % of pairwise antibiotic interaction, leading to a widened or shifted upwards mutant selection window for increased opportunity of acquiring second-step mutations. We quantified the interactive promoting effect of collateral resistance and increasing temperature on the evolution of both phenotypic and genotypic cyanobacteria-associated resistance under chronic exposure to environmental level of antibiotic combinations. With temperature increasing from 16 °C to 36 °C, the evolvability index and genotypic resistance level increased by 1.25 - 2.5 folds and 3 - 295 folds in the collateral-resistance-informed lineages, respectively. Emergence of resistance mutation pioneered by tolerance, which was jointly driven by mutation rate and persister fraction, was found to be accelerated by increased temperature and antibiotic switching rate. Our findings provided mechanic insights into the boosting effect of climate warming on the emergence and development of cyanobacteria-associated resistance against collateral antibiotic phenotypes.

摘要

近年来,蓝藻水华和抗生素耐药性问题在全球范围内日益严重,对公众健康构成了重大威胁。作为水环境抗性库的重要来源,蓝藻在亚抑菌浓度下对抗生素混合物表现出低敏感性和慢性暴露,但这之间存在令人困惑的差异。在气候变化下,不断上升的温度如何影响蓝藻相关抗生素耐药性的适应性进化,以应对低水平的抗生素组合,目前仍不清楚。在这里,我们对中国四个富营养化湖泊 50 个地点采集的 600 株蓝藻分离株中 33 种常见抗生素进行了抗生素相互作用和旁系易感性网络分析。研究发现,蓝藻相关抗生素耐药水平与所有地点的抗生素异质性呈正相关。在 528 种抗生素组合中,有 62%的相互作用表现为拮抗作用,并且在蓝藻种内高度保守。在 78.5%的抗生素相互作用中检测到了旁系易感性,导致突变选择窗变宽或向上移动,增加了获得第二步突变的机会。我们量化了在慢性暴露于环境水平抗生素组合的情况下,旁系易感性和温度升高对表型和基因型蓝藻相关耐药性进化的相互促进作用。随着温度从 16°C 升高到 36°C,在旁系易感性信息谱系中,可进化指数和基因型耐药水平分别增加了 1.25-2.5 倍和 3-295 倍。我们发现,由突变率和持久细胞分数共同驱动的耐受性先驱耐药突变的出现速度加快,这与温度升高和抗生素转换率的增加有关。本研究结果为气候变化对蓝藻相关耐药性的出现和发展的促进作用提供了机制上的见解。

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